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Symposium F.EN07 : Innovative Materials and Cell Design, Processing and Manufacturing Strategies for Solid-State Batteries

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Symposium Organizers

Jae Chul Kim, Stevens Institute of Technology
Candace Chan, Arizona State Univ
Hailong Chen, Georgia Institute of Technology
Dina Fattakhova-Rohlfing, Universität Duisburg-Essen

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Bronze
Kleindiek Inc.
F.EN07.01: New Developments in Solid State Batteries
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F-EN07

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All-Solid-State Batteries—Hype vs Reality

Y. Shirley Meng1

University of California, San Diego1

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

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Chemical and Mechanical Stability Issues at Electrolyte/Electrode Interfaces in Solid-State Batteries

Gerbrand Ceder1,2

University of California, Berkeley1,Lawrence Berkeley National Laboratory2

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F.EN07.03: Advanced Ceramic Processing for Solid State Batteries
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F-EN07

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Advancement of Low Temperature Ceramic Synthesis for Solid State Battery Components and Cells—A Personal Love Story

Jennifer Rupp1

Massachusetts Institute of Technology1

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F.EN07.04: Polymer and Composite Electrolytes
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F-EN07

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Polymer Electrolytes for Lithium-Ion and Future Emerging Battery Technologies

Elie Paillard4,Julia Wellmann1,Junli Shi1,Tong Zhang1,Miaomiao Liang1,Ava Hosseinioun1,Balasubramanyian Rajagopalan1,Huu-Dat Nguyen2,Zhen Chen3,Dominik Steinle3,Xin He1,Jie Li4,Jean-Yves Sanchez5,Dominic Bresser3,Cristina Iojoiu2

Forschungszentrum Jülich GmbH1,Université Grenoble Alpes2,Karlsruhe Institute of Technology3,Politecnico di Milano4,University Carlos III de Madrid5

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F.EN07.05: Computational Modeling of Ionic Conductors
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F-EN07

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Data-Driven Discovery of New Materials for Solid-State Batteries

Yifei Mo1

University of Maryland1

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F.EN07.06: Materials for Solid State Batteries
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F-EN07

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Correlating Structure and Dynamics in Solid Electrolytes by NMR Spectroscopy

Sylvio Indris1

Karlsruhe Institute of Technology1

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F.EN07.07: Poster Session: Innovative Materials and Cell Design, Processing and Manufacturing Strategies for Solid State Batteries
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F-EN07

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Reducing of Grain Boundary Influences by Hybridization of Polyether / Li1.5Al0.5Ge1.5(PO4)3 for Li-Conductive Solid Electrolyte

Naamo Suzuki1,Kenta Fujii2,Koji Ohara3,Shiro Seki1

Kogakuin University1,Yamaguchi University2,Japan Synchrotron Radiation Research Institute3

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Available on demand - F.EN07.07.04
Late News: Development of Ceramic Electrolytes for All-Solid-State Batteries

Andre Borchers1,Magnus Rohde1,Hans Jürgen Seifert1

KIT1

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F.EN07.01: New Developments in Solid State Batteries
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F-EN07

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Towards Solid-State Batteries for Electric Vehicles

Marca Doeff1

Lawrence Berkeley National Laboratory1

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

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From Bonding Interactions in Solid Electrolytes to Solvent-Influences on the Performance of Solid-State Batteries

Wolfgang Zeier1

University of Muenster1

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F.EN07.03: Advanced Ceramic Processing for Solid State Batteries
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F-EN07

Available on demand - *F.EN07.03.02
10 Seconds Ultrafast High Temperature Sintering (UHS) for High Performance Solid-State Electrolytes and Batteries

Liangbing Hu1

University of Maryland1

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F.EN07.04: Polymer and Composite Electrolytes
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F-EN07

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Long-Cycle-Life Solid-State Batteries with PVDF-Based Electrolytes

Liangliang Li1,Xue Zhang1,Chuanjiao Xue1,Yang Shen1,Cewen Nan1

Tsinghua University1

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F.EN07.05: Computational Modeling of Ionic Conductors
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F-EN07

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Computational Materials Design for Solid-State Li and Na Ionic Conductors

Yan Wang1,2,3

Samsung Research America1,Massachusetts Institute of Technology2,Lawrence Berkeley National Laboratory3

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F.EN07.06: Materials for Solid State Batteries
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F-EN07

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LGPS-Type Sulfide Solid Electrolytes

Ryoji Kanno1,Satoshi Hori1,Kouta Suzuki1,Masaaki Hirayama1

Tokyo Institute of Technology1

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F.EN07.01: New Developments in Solid State Batteries
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F-EN07

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Solid-State Lithium-Ion Battery with Mixed 2D and 3D Electrodes

Bruce Dunn2,David Ashby1,Christopher Choi2,Martin Edwards3,A. Talin1,Henry White3

Sandia National Laboratories1,University of California, Los Angeles2,University of Utah3

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

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Conformal Solid Electrolytes for Beyond Li-Ion Solid-State Batteries

Ramsay Nuwayhid1,Angelique Jarry1,Alexander Kozen1,Gary Rubloff1,Keith Gregorczyk1

University of Maryland1

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F.EN07.03: Advanced Ceramic Processing for Solid State Batteries
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F-EN07

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Ultrafast High-Temperature Sintering (UHS) Process for Solid State Electrolytes

Chengwei Wang1,Liangbing Hu1

University of Maryland1

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F.EN07.04: Polymer and Composite Electrolytes
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F-EN07

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Pendent Polymer Electrolytes with Hydrocarbon Backbone and Li+-Conducting Side Chains

Nian Liu1,Yubin He1,Paul Kohl1

Georgia Institute of Technology1

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F.EN07.05: Computational Modeling of Ionic Conductors
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F-EN07

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Solid-State Chemistries Stable with High-Energy Cathodes for Lithium-Ion Batteries

Adelaide Nolan1,Yunsheng Liu1,Yifei Mo1

University of Maryland1

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F.EN07.06: Materials for Solid State Batteries
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Understanding How Crystallographic Defects Govern the Charging Distribution in Solid Cathode Materials

Feng Lin1,Zhengrui Xu1

Virginia Tech1

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

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Reduction of Solid Electrolyte-Electrode Interfacial Impedance in Lithium-Ion Batteries Through a Buffer Layer

Joseph Sullivan1,Arijit Bose1

The University of Rhode Island1

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F.EN07.03: Advanced Ceramic Processing for Solid State Batteries
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F-EN07

Available on demand - F.EN07.03.05
High Toughness Ceramic Nanocomposite Electrolytes

Christos Athanasiou1,Mok Yun Jin1,Cristina Ramirez1,Nitin Padture1,Brian Sheldon1

Brown University1

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F.EN07.04: Polymer and Composite Electrolytes
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F-EN07

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Ionic Conductivity Enhancement Induced by Crystallization Alignment in Polymer Electrolytes

Changhao Liu1,Yangyang Wang1,Jong Keum1,Xi Chen1

Oak Ridge National Laboratory1

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F.EN07.05: Computational Modeling of Ionic Conductors
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F-EN07

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Accurate Machine-Learning Models for the Atomic-Scale Simulation of Doped LLZO Solid Electrolytes

Qian Wang1,2,Alexander Urban1,Nongnuch Artrith1

Columbia University1,Beijing University of Posts and Telecommunications2

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F.EN07.01: New Developments in Solid State Batteries
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F-EN07

Available on demand - *F.EN07.01.04
Towards a Fast Charging 4 V Class All-Solid-State Battery

Corsin Battaglia1

Empa-Swiss Federal Laboratories for Materials Science and Technology1

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F.EN07.06: Materials for Solid State Batteries
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F-EN07

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LLZO: Al, Ta, Nb, W – Different Dopants and Their Effect on Microstructure and Lithium Diffusion

Charlotte Fritsch1,Anna-Lena Hansen1,Sylvio Indris1,Tatiana Zinkevich1,Michael Knapp1,Thomas Bergfeldt2,Volodymyr Baran3,Helmut Ehrenberg1

Karlsruhe Insitute of Technology1,Karlsruhe Institute of Technology2,Research Neutron Source FRM II3

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

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Substrate Strain Enhances the Reversible Cycling of Thin-Film Electrodes

Delin Zhang1,Ananya Renuka Balakrishna1

University of Southern California1

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F.EN07.03: Advanced Ceramic Processing for Solid State Batteries
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F-EN07

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Thin-Film Microfabrication for High Performance 3D Solid-State Batteries

David Stewart1,Haotian Wang1,Victoria Ferrari1,Keith Gregorczyk1,Sangbok Lee1,Gary Rubloff1

University of Maryland1

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F.EN07.04: Polymer and Composite Electrolytes
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F-EN07

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Conditioning Hybrid Organic-Inorganic Solid Electrolytes for Improved Cation Mobility

Vazrik Keshishian1,John Kieffer1

University of Michigan1

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F.EN07.05: Computational Modeling of Ionic Conductors
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F-EN07

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Novel Solid-State Li-Ion Conductor by Computational Design and High-Throughput Screening

Wonseok Jeong1,Seungwu Han1,Youngho Kang2

Seoul National University1,Incheon National University2

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F.EN07.06: Materials for Solid State Batteries
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F-EN07

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Phase Behavior in NaSiCON Electrolytes and Electrodes

Zeyu Deng1,Sai Gautam Gopalakrishnan2,Christian Masquelier3,Pieremanuele Canepa1

National University of Singapore1,Princeton University2,Universite de Picardie Jules Verne3

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F.EN07.01: New Developments in Solid State Batteries
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F-EN07

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Material Development and Manufacturing Strategies For Solid-State Batteries based on Sulfide Solid Electrolytes

Josh Buettner-Garrett1

SolidPower1

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

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Effect of Gas Environment on Interfacial Degradation Between Al Doped Li7La3Zr2O12 Electrolyte and LiNi0.6Mn0.2Co0.2O2 Cathode

Younggyu Kim1,Bilge Yildiz1

Massachusetts Institute of Technology1

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F.EN07.04: Polymer and Composite Electrolytes
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F-EN07

Available on demand - F.EN07.04.06
Solvent-Mediated Synthesis of Amorphous Li3PS4/PEO Composite Solid Electrolytes with High Li+ Conductivity

Ethan Self1,Zachary Hood2,Teerth Brahmbhatt3,Frank Delnick1,Harry Meyer III1,Guang Yang1,Jennifer Rupp4,Jagjit Nanda1

Oak Ridge National Laboratory1,Argonne National Laboratory2,The University of Tennessee, Knoxville3,Massachusetts Institute of Technology4

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F.EN07.05: Computational Modeling of Ionic Conductors
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F-EN07

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Modeling the Electrical Double Layer at Solid-State Electrochemical Interfaces

Michael Swift1,James Swift2,Yue Qi1

Michigan State University1,Northern Arizona University2

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F.EN07.06: Materials for Solid State Batteries
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The Structure of the Amorphous Solid Electrolytes LiPON and LiSiPON

Andrew Westover1,Mordechai Kornbluth2,Jue Liu1,Nancy Dudney1,Andrew Kercher1

Oak Ridge National Laboratory1,Robert Bosch LLC.2

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

Available on demand - F.EN07.02.09
Late News: Towards Enhanced Oxidative Stability for Na-Solid State Electrolytes via Halogenation—The Case of Na4(CB11H12)2B12Br12

Fabrizio Murgia1,Marc Nierstenhöfer2,Matteo Brighi1,Carsten Jenne2,Radovan Cerny1

Université de Genève1,Bergische Universität Wuppertal2

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F.EN07.05: Computational Modeling of Ionic Conductors
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F-EN07

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Strain Effect on Li-Ion Conductivity of β-Li3PS4 Assessed by Ab Initio Molecular Dynamics Study

Pjotrs Zguns1,Bilge Yildiz1

Massachusetts Institute of Technology1

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F.EN07.06: Materials for Solid State Batteries
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F-EN07

Available on demand - F.EN07.06.11
Challenges for All-Solid-State-Batteries Based on Argyrodite-Type Solid Electrolyte

Xavier Randrema1,2,Mohamed Chakir1,Virginie Viallet2,Mathieu Morcrette2

Renault1,Laboratoire de Réactivité et Chimie des Solides2

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

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Late News: Towards the Development of Air-Stable Li-La-Zirconate Based Solid Electrolyte Exhibiting Minimal Electrode/Electrolyte Interfacial Resistance for All-Solid-State Li-Ion Batteries

Sushobhan Kobi1,Amardeep Amardeep1,Akhilesh Vyas1,Parag Bhargava1,Amartya Mukhopadhyay1

Indian Institute of Technology Bombay1

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F.EN07.06: Materials for Solid State Batteries
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F-EN07

Available on demand - F.EN07.06.15
Late News: Nido-Hydroborate Based Electrolytes for All-Solid-State Batteries

Seyedhosein Payandeh1,Ryo Asakura1,2,Daniel Rentsch1,Zbigniew Lodziana3,Petroula Avramidou1,Laurent Bigler4,Radovan Cerny2,Arndt Remhof1,Corsin Battaglia1

Empa institute1,University of Geneva2,Polish Academy of Sciences3,University of Zurich4

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F.EN07.02: Solid State Battery Interfaces
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F-EN07

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Late News: An Investigation into Failure Mechanisms for a Novel Li-Ion Solid-State Electrolyte

Tofunmi Ogunfunmi1,Nnaemeka Ebechidi2,Ridwan Ahmed1,Oluwaseun Oyewole1,John Obayemi1,Winston Soboyejo1,2

Worcester Polytechnic Institute1,African University of Science and Technology2

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F.EN07.06: Materials for Solid State Batteries
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F-EN07

Available on demand - F.EN07.06.16
Late News: Charge Compensation and Ionic Conductivity in the (MgCoCuNiZn)1-xLixO1- High Entropy Oxides

Nicolas Osenciat1,David Bérardan1,Diana Dragoe1,Brigitte Léridon2,Stéphane Holé2,Arun-Kumar Meena1,Sylvain Franger1,Nita Dragoe1

Université Paris-Saclay1,École supérieure de physique et de chimie industrielles de la ville de Paris2

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Available on demand - F.EN07.06.17
Late News: Influence of Structural Distortion and Lattice Dynamics on Li-Ion Diffusion in Li3OCl1-xBrx Superionic Conductors

Ronghan Chen1,Zhenming Xu1,Hong Zhu1

Shanghai Jiao Tong University, University of Michigan – Shanghai Jiao Tong University Joint Institute1

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Available on demand - F.EN07.06.18
Late News: Mixed-Anion Na-Hydroborates as New Class of Solid Electrolytes

Matteo Brighi1,Fabrizio Murgia1,Radovan Cerny1

University of Geneva1

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2020-12-02   Show All Abstracts

Symposium Organizers

Jae Chul Kim, Stevens Institute of Technology
Candace Chan, Arizona State Univ
Hailong Chen, Georgia Institute of Technology
Dina Fattakhova-Rohlfing, Universität Duisburg-Essen

Symposium Support

Bronze
Kleindiek Inc.
F.EN07.08: Live Keynote I: Innovative Materials and Cell Design, Processing and Manufacturing Strategies for Solid State Batteries
Session Chairs
Candace Chan
Jae Chul Kim
Wednesday AM, December 02, 2020
F.EN07

11:30 AM - *F.EN07.02.01
Chemical and Mechanical Stability Issues at Electrolyte/Electrode Interfaces in Solid-State Batteries

Gerbrand Ceder1,2

University of California, Berkeley1,Lawrence Berkeley National Laboratory2

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12:30 PM - *F.EN07.01.01
All-Solid-State Batteries—Hype vs Reality

Y. Shirley Meng1

University of California, San Diego1

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2020-12-03   Show All Abstracts

Symposium Organizers

Jae Chul Kim, Stevens Institute of Technology
Candace Chan, Arizona State Univ
Hailong Chen, Georgia Institute of Technology
Dina Fattakhova-Rohlfing, Universität Duisburg-Essen

Symposium Support

Bronze
Kleindiek Inc.
F.EN07.09: Live Keynote II: Innovative Materials and Cell Design, Processing and Manufacturing Strategies for Solid State Batteries
Session Chairs
Candace Chan
Jae Chul Kim
Thursday AM, December 03, 2020
F.EN07

8:00 AM - *F.EN07.02.03
From Bonding Interactions in Solid Electrolytes to Solvent-Influences on the Performance of Solid-State Batteries

Wolfgang Zeier1

University of Muenster1

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9:00 AM - *F.EN07.01.04
Towards a Fast Charging 4 V Class All-Solid-State Battery

Corsin Battaglia1

Empa-Swiss Federal Laboratories for Materials Science and Technology1

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2020-12-04   Show All Abstracts
F.EN07.10: Live Keynote III: Innovative Materials and Cell Design, Processing and Manufacturing Strategies for Solid State Batteries
Session Chairs
Candace Chan
Jae Chul Kim
Friday AM, December 04, 2020
F.EN07

11:30 AM - *F.EN07.01.02
Towards Solid-State Batteries for Electric Vehicles

Marca Doeff1

Lawrence Berkeley National Laboratory1

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